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Photoassimilate-transport characteristics of nonchlorophyllous and green tissue in variegated leaves of Coleus blumei Benth

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Abstract

The nonchlorophyllous (albino) tissue of mature C. blumei leaves is a sink for photoassimilate. Transport from the green to the albino region of the same leaf was inhibited by cold and anoxia. When the green tissue of mature leaves was removed, the remaining albino portion imported labeled translocate from other mature leaves in the phloem. Photoassimilate unloading in the albino region of mature leaves was studied by quantitative autoradiography. The unloading was inhibited by cold but not by anoxia. No labeled photoassimilate could be detected in the free space of mature albino tissue by compartmental efflux analysis as phloem unloading proceeded in a N2 atmosphere, indicating that unloading, may occur by a symplastic pathway as it apparently does in sink leaves of other species. The minor veins of mature albino leaf tissue did not accumulate exogenous [14C]sucrose. Minor veins of green tissue in the same leaves accumulated [14C]sucrose but, in contrast to other species studied to date, this accumulation was insensitive to the inhibitor p-chloromercuribenzensulfonic acid (PCMBS).

In its capacity to import and unload photoassimilate, and in the inability, of the minor veins to accumulate exogenous sucrose, the albino region of the mature C. blumei lamina differs from mature albino tobacco leaves and darkened mature leaves of other species. This, together with evidence indicating that phloem loading in C. blumei and other species may occur by different routes and with different sensitivity to PCMBS, indicates that the mechanism of transfer of photoassimilates between veins and surrounding tissues, and the mechanism of the sink-source transition, may not be the same in the leaves of all species. It is speculated that the unusual properties of the C. blumei leaf may be a consequence of the presence, in the minor veins, of “intermediary cells”, large companion cells connected to the bundle sheath by abundant plasmodesmata.

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Abbreviations

PCMBS:

p-chloromercuribenzenesulfonic acid

References

  • Blechschmidt-Schneider, S., Eschrich, W. (1985) Microautora-diographic localization of imported 14C-photosynthate in induced leaves of two dicotyledonous C4 plants in relation to phloem unloading. Planta 163, 439–447

    Google Scholar 

  • Erickson, R.O., Michelini, F.J. (1957) The plastochron index. Am. J. Bot. 4, 297–305

    Google Scholar 

  • Fellows, R.J., Geiger, D.R (1974) Structural and physiological changes in sugar beet leaves during sink to source conversion. Plant Physiol. 54, 877–885

    Google Scholar 

  • Fisher, D.G. (1986) Ultrastructure, plasmodesmata frequency, and solute concentration in green areas of variegated Coleus blumei Benth. leaves. Planta 169, 141–152

    Google Scholar 

  • Fisher, D.G., Eschrich, W. (1985a) Import and unloading of 14C assimilate into mature leaves, of Coleus blumei. Can. J. Bot. 63, 1700–1707

    Google Scholar 

  • Fisher D.G., Eschrich, W. (1985b) Import and unloading of 14C assimilate into nonphotosynthetic protions of variegated Coleus blumei leaves. Can. J. Bot. 63, 1708–1712

    Google Scholar 

  • Jones, H., Eagles, J.E. (1962) Translocation of 14carbon within and between leaves. Ann. Bot. N.S. 26, 505–510

    Google Scholar 

  • Madore, M.A., Lucas, W.J. (1987) Control of photoassimilate movement in source-leaf tissues of Ipomoea tricolor Cav. Planta 171, 197–204

    Google Scholar 

  • Schmalstig, J.G., Geiger, D.R. (1985) Phloem, unloading in developing leaves of sugar beet. I. Evidence for pathway through the symplast. Plant Physiol. 79, 237–241

    Google Scholar 

  • Schmalstig, J.G., Geiger, D.R. (1987) Phloem unloading in developing leaves of sugar beet. II. Termination of phloem unloading. Plant Physiol. 83, 49–52

    Google Scholar 

  • Sun, D. Wimmers, L.E., Turgeon, R. (1988) Scintillation counting of 14C-labeled soluble and insoluble compounds in plant tissue. Anal. Biochem. 169, 424–427

    PubMed  Google Scholar 

  • Thrower, S.L., Thrower, L.B. (1980) Translocation into mature leaves. The pathway of assimilate movement. New Phytol. 86, 145–154

    Google Scholar 

  • Turgeon, R., (1984a) Termination of nutrient import and development of vein loading capacity in albino tobacco leaves. Plant Physiol. 76, 45–48

    Google Scholar 

  • Turgeon, R. (1984b) Efflux of sucrose from minor veins of tobacco leaves. Planta 161, 120–128

    Google Scholar 

  • Turgeon, R. (1986) The import-export transition in dicotyledonous leaves. In: Cronshaw, J., Lucas, W.J., Giaquinta R.T., eds. Phloem transport, pp. 285–291. A. R. Liss, New York

    Google Scholar 

  • Turgeon, R. (1987) Phloem unloading in tobacco sink leaves: insensitivity to anoxia indicates a symplastic pathway. Planta 171, 73–81

    Google Scholar 

  • Turgeon, R., Webb, J.A., Evert, R.F. (1975) Ultrastructure of minor veins of Cucurbita pepo leaves. Protoplasma 83, 217–232

    Google Scholar 

  • Turgeon, R., Wimmers, L.E. (1988) Different patterns of vein loading of exogenous [14C]sucrose in leaves of Pisum sativum and Coleus blumei. Plant Physiol. (in press)

  • Walker, N.A., Pitman, M.G. (1976) Measurement of fluxes across membranes. In: Lüttge, U., Pitman, M.G., eds. Encyclopedia of plant physiology N.S., vol. 2: Transport in plants II: Cells, pp. 93–126 Springer, Berlin Heidelberg New York

    Google Scholar 

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Weisberg, L.A., Wimmers, L.E. & Turgeon, R. Photoassimilate-transport characteristics of nonchlorophyllous and green tissue in variegated leaves of Coleus blumei Benth. Planta 175, 1–8 (1988). https://doi.org/10.1007/BF00402875

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  • DOI: https://doi.org/10.1007/BF00402875

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